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Microstructure and mechanical properties of solid-phase sintered heavy tungsten alloy
C. C. Fu, L. J. Chang, Y. C. Huang, P. W. Wong,
J. S.C. Jang
材料科學與工程研究所
研究成果
:
雜誌貢獻
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會議論文
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同行評審
8
引文 斯高帕斯(Scopus)
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Keyphrases
Solid Phase
100%
Microstructure Properties
100%
Tungsten Heavy Alloy
100%
Mechanical Properties of Solids
100%
Mechanical Properties
50%
Tungsten
50%
Mechanical Alloying
50%
Sintering Temperature
50%
Compression Strength
50%
W-Ni-Fe
50%
High Performance
25%
Melting Temperature
25%
Microstructure
25%
Nanopowder
25%
X Ray Diffraction
25%
Melting Process
25%
FeCo
25%
Hardness Strength
25%
Sintering Time
25%
Solid Solution Phase
25%
Matrix Phase
25%
Powder Metallurgy Method
25%
Fe-Ni Solid Solution
25%
FeCo Alloy
25%
Solid-phase Sintering
25%
Pure Elements
25%
Cold Isostatic Pressing
25%
Pre-alloyed Powder
25%
Sintered Alloy
25%
Armor piercing
25%
SEM with EDS
25%
Microstructure Characterization
25%
Engineering
Sintering Temperature
100%
Mechanical Alloying
100%
Compression Strength
100%
Melting Temperature
50%
Ray Diffraction
50%
Temperature Time
50%
Core Material
50%
Melting Process
50%
Sintering Time
50%
Matrix Phase
50%
Powder Metallurgy
50%
Armour-Piercing Ammunition
50%
Cold Isostatic Pressing
50%
Pure Element
50%
Spex Mill
50%
Sintered Alloy
50%
Melting Point
50%
Solid Solutions
50%
Sintering
50%
Energy dispersive spectrometry
50%
Material Science
Tungsten
100%
Tungsten Alloys
100%
Mechanical Alloying
50%
Sintering Temperature
50%
Scanning Electron Microscopy
25%
X-Ray Diffraction
25%
Energy-Dispersive X-Ray Spectroscopy
25%
Powder Metallurgy
25%
Solid Phase Sintering
25%
Cobalt-Iron Alloys
25%
Microstructure Characterization
25%
Cold Isostatic Pressing
25%
Solid Solutions
25%
Sintering
25%